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The basis for using bone-conducted vibration or air-conducted sound to test otolithic function

机译:使用骨对振动或空气传导声音来测试近耳函数的基础

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Extracellular single neuron recordings of primary vestibular neurons in Scarpa's ganglion in guinea pigs show that low-intensity 500 Hz bone-conducted vibration (BCV) or 500 Hz air-conducted sound (ACS) activate a high proportion of otolith irregular neurons from the utricular and saccular maculae but few semicircular canal neurons. In alert guinea pigs, and humans, 500 Hz BCV elicits otolith-evoked eye movements. In humans, it also elicits a myogenic potential on tensed sternocleidomastoid muscles. Although BCV and ACS activate both utricular and saccular maculae, it is possible to probe the functional status of these two sense organs separately because of their differential neural projections. Saccular neurons have a strong projection to neck muscles and a weak projection to the oculomotor system. Utricular afferents have a strong projection to eye muscles. So measuring oculomotor responses to ACS and BCV predominantly probes utricular function, while measuring neck muscle responses to these stimuli predominantly probes saccular function.
机译:豚鼠神经节的主要前庭神经元的细胞外单个神经元记录表明,低强度500Hz骨头导电振动(BCV)或500Hz的空气传导声音(ACS)激活来自Utticular和Utticular的高比例的Otolith不规则神经元囊状黄斑,但少数半圆形管神经元。在警报豚鼠和人类中,500 Hz BCV引发欧特里斯诱发的眼球运动。在人类中,它还引发了紧张的胸骨细胞肌瘤肌肉的肌源性潜力。虽然BCV和AC激活Utticular和囊状黄斑,但由于其差动神经投影,可以分别探测这两个感觉器官的功能状态。囊状神经元对颈部肌肉的强烈投影和对动眼系统的弱投影。 Utricular患有一个强烈的眼睛肌肉投射。因此,测量血管型对ACS和BCV的反应主要探测Utticular功能,同时测量对这些刺激的颈部肌肉反应主要探测囊状功能。

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